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Technology and Innovation Management
Technology and Innovation Management is one of the most sought-after courses offered like MBA or PGDM in Business Schools and various Technology Institutes, today.This book, written with deep ingrained practical insights and well-researched theoretical foundations integrates people, processes and technology to achieve maximum economic benefits to society.The book is designed to be a compendium for students and managers, who wish to understand technology and innovation management to the core.The book explains the relationship between technology innovation and strategy in a simplified manner.Keeping Indian education framework in mind, this book details on practices and principles that are easy to implement.The theories are simple to grasp, and anecdotal stories on Technology and Innovation implementations make it a student-friendly edition, to help achieve success in exams as well as in the professional front.It further explains the core principles of Technology and Innovation Management.S-Curve and the Segment Zero Principle, adopting industry 4.0 and innovation 4.0 to make India a smart and intelligent manufacturing hub in the era of fourth industrial revolution, design thinking for solving complex business problems along with the role and contribution of Government in Technology Development.
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Strategic Management : Reflecting Strategic Flexibility, Innovation and Entrepreneurship
This book emphasizes the concepts of strategic innovation and entrepreneurship, which are quite prevalent in today's organizations.Going beyond traditional approach that follows strategic analysis, choice and implementation framework, and traditional theories based on industrial organization paradigm and resource-based view, the book considers current business environment, which is volatile, uncertain, complex, chaotic, conflicting, and ambiguous (VUCA).It takes the strategic flexibility view to cope with these strategic challenges. The book introduces the subject matter of strategic management in retrospect and prospect, highlighting critical theories of strategic management.It uses a strategic learning framework rather than a purely analytical approach to dynamically learn about the external situation, internal resources, and capabilities.The evolution of strategy is given in terms of generic strategies in practice and adaptation in specific contexts.It further deals with essential topics such as strategic alliances and networks, mergers and acquisitions, and global strategy.It then provides the execution framework and models covering restructuring, leadership, corporate governance, and change management.The strategy in specific areas such as strategic technology management, e-business and knowledge management, and functional strategies and policies are discussed to understand the implementation depth.Finally, it touches upon contemporary issues such as sustainable enterprise, stakeholder perspectives, and comparative strategies in various contexts.It then outlines future directions of strategic management.In the end, case analysis guidelines are provided with sample cases from different parts of the world.The book also used interpretive and simulation methods such as system dynamics and total interpretive structural modeling to grasp the relationships and their dynamic impact provided throughout the book.It will be an invaluable resource for researchers of business strategy as well as students studying these courses; it will also be useful for industry practitioners, corporates and business policy makers.
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Global Project Management : Communication, Collaboration and Management Across Borders
Global Project Management describes how to adapt your organisation and your projects to thrive in business environments which require distributed skills, around-the-clock operations and virtual team environments. The book goes beyond simple recommendations on collaborative tools, to suggest the development of best practices on cross-cultural team management and global communication, recommend organisational changes and project structures, and propose alternatives for the implementation of the new practices and methods.Filled with real-life examples and techniques, the book illustrates how to apply the recommendations as part of the successful management of any global project.
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Fashion and Environmental Sustainability : Entrepreneurship, Innovation and Technology
The wide range of topics that the book covers are organised into sections reflecting a cradle to grave view of how entrepreneurial, innovative, and tech-savvy approaches can advance environmental sustainability in the fashion sector.These sections include: sustainable materials; innovation in design, range planning and product development; sustainable innovations in fashion supply chains; sustainable innovations in fashion retail and marketing; sustainable alternatives for end-of-life and circular economy initiatives; and more sustainable alternative fashion business models.
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What are similarity ratios?
Similarity ratios are ratios that compare the corresponding sides of two similar figures. They help us understand the relationship between the sides of similar shapes. The ratio of corresponding sides in similar figures is always the same, which means that if you know the ratio of one pair of sides, you can use it to find the ratio of other pairs of sides. Similarity ratios are important in geometry and are used to solve problems involving similar figures.
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What is the difference between similarity theorem 1 and similarity theorem 2?
Similarity theorem 1, also known as the Angle-Angle (AA) similarity theorem, states that if two angles of one triangle are congruent to two angles of another triangle, then the triangles are similar. On the other hand, similarity theorem 2, also known as the Side-Angle-Side (SAS) similarity theorem, states that if two sides of one triangle are proportional to two sides of another triangle and the included angles are congruent, then the triangles are similar. The main difference between the two theorems is the criteria for establishing similarity - AA theorem focuses on angle congruence, while SAS theorem focuses on both side proportionality and angle congruence.
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How can one calculate the similarity factor to determine the similarity of triangles?
The similarity factor can be calculated by comparing the corresponding sides of two triangles. To do this, one can divide the length of one side of the first triangle by the length of the corresponding side of the second triangle. This process is repeated for all three pairs of corresponding sides. If the ratios of the corresponding sides are equal, then the triangles are similar, and the similarity factor will be 1. If the ratios are not equal, the similarity factor will be the ratio of the two triangles' areas.
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How can the similarity factor for determining the similarity of triangles be calculated?
The similarity factor for determining the similarity of triangles can be calculated by comparing the corresponding sides of the two triangles. If the ratio of the lengths of the corresponding sides of the two triangles is the same, then the triangles are similar. This ratio can be calculated by dividing the length of one side of a triangle by the length of the corresponding side of the other triangle. If all three ratios of corresponding sides are equal, then the triangles are similar. This is known as the similarity factor and is used to determine the similarity of triangles.
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An Invitation to Fractal Geometry : Fractal Dimensions, Self-Similarity and Fractal Curves
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An Invitation to Fractal Geometry : Fractal Dimensions, Self-Similarity and Fractal Curves
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Sales Force Management : Leadership, Innovation, Technology
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Sales Force Management : Leadership, Innovation, Technology
This 14th edition of Sales Force Management continues to build on the book’s reputation as a contemporary classic, fully updated for modern sales management teaching, research, and practice. By identifying recent trends and applications, Sales Force Management combines real-world sales management best practices with cutting-edge theory and empirical research in a single, authoritative source.The authors have strengthened the focus on the use of technology in sales management including the use of AI in predictive sales analytics, updated the content to reflect the enduring impact of the Covid-19 Pandemic, and revised the case studies and features throughout.Pedagogical features include:All-new ‘Thought Bubblers’ posing international challenges regularly encountered by sales managers to develop students’ cultural intelligence and ability to handle cross-cultural interactions with ease.Engaging breakout questions designed to spark lively discussion. Leadership Challenge assignments at the end of every chapter to help students understand and apply the principles they have learned in the classroom. Minicases updated to reflect contemporary B2B industry settings that today’s graduating sales students will find themselves in, such as technology sales roles. Leadership, Innovation, and Technology boxes that simulate real-world challenges faced by salespeople and their managers. Ethical Moment boxes in each chapter put students on the firing line of making ethical choices in sales. Role-Play exercises at the end of each chapter, designed to enable students to learn by doing. This fully updated new edition is an invaluable resource for students of sales management at both undergraduate and postgraduate levels. Online supplementary resources include an Instructor’s Manual and PowerPoint lecture slides.
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Do you see the similarity?
Yes, I see the similarity between the two concepts. Both share common characteristics and features that make them comparable. The similarities can be observed in their structure, function, and behavior. These similarities help in understanding and drawing parallels between the two concepts.
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'How do you prove similarity?'
Similarity between two objects can be proven using various methods. One common method is to show that the corresponding angles of the two objects are congruent, and that the corresponding sides are in proportion to each other. Another method is to use transformations such as dilation, where one object can be scaled up or down to match the other object. Additionally, if the ratio of the lengths of corresponding sides is equal, then the two objects are similar. These methods can be used to prove similarity in geometric figures such as triangles or other polygons.
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What is similarity in mathematics?
In mathematics, similarity refers to the relationship between two objects or shapes that have the same shape but are not necessarily the same size. This means that the objects are proportional to each other, with corresponding angles being equal and corresponding sides being in the same ratio. Similarity is often used in geometry to compare and analyze shapes, allowing for the transfer of properties and measurements from one shape to another.
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What is the similarity ratio?
The similarity ratio is a comparison of the corresponding sides of two similar figures. It is used to determine how the dimensions of one figure compare to the dimensions of another figure when they are similar. The ratio is calculated by dividing the length of a side of one figure by the length of the corresponding side of the other figure. This ratio remains constant for all pairs of corresponding sides in similar figures.
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